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Cobalt Particle Size Effects in the Fischer-Tropsch Synthesis and in the Hydrogenation of CO2 Studied with Nanoparticle Model Catalysts on Silica

机译:费托合成和二氧化硅中纳米颗粒模型催化剂研究CO2加氢过程中钴的粒径效应

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We have investigated the effect of cobalt nanoparticle size in Fischer-Tropsch synthesis (CO/H2) and have compared it to data obtained for carbon dioxide hydrogenation (CO2/H2) using model catalysts produced by colloidal methods. Both reactions demonstrated size dependence, in which we observed an increase of the turnover frequency with increasing average particle size. In both case, a maximum activity was found for cobalt particles around 10-11 nm in size. Regarding the selectivity, no size-dependent effect has been observed for the CO2 hydrogenation, whereas CO hydrogenation selectivity depends both on the temperature and on the size of the particles. The hydrogenation of CO2 produces mainly methane and carbon monoxide for all sizes and temperatures. The Fischer-Tropsch reaction exhibited small changes in the selectivity at low temperature (below 250 °C) while at high temperatures we observed an increase in chain growth with the increase of the size of cobalt particles. At 250 °C, large crystallites exhibit a higher selectivity to olefin than to the paraffin equivalents, indicating a decrease in the hydrogenation activity.
机译:我们已经研究了钴纳米粒度在费-托合成(CO / H2)中的影响,并将其与使用胶体方法制备的模型催化剂将二氧化碳加氢(CO2 / H2)所得的数据进行了比较。两种反应均显示出尺寸依赖性,其中我们观察到周转频率随平均粒径的增加而增加。在这两种情况下,都发现尺寸约为10-11 nm的钴颗粒具有最大活性。关于选择性,未观察到CO 2氢化的尺寸依赖性效应,而CO氢化选择性取决于温度和颗粒尺寸。在各种尺寸和温度下,CO2的氢化作用主要产生甲烷和一氧化碳。 Fischer-Tropsch反应在低温(低于250°C)下显示出很小的选择性变化,而在高温下,我们观察到链增长随钴颗粒尺寸的增加而增加。在250°C时,大的微晶对烯烃的选择性高于对石蜡的当量,表明氢化活性降低。

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